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The Effect of Viscosity on Performance of a Low Specific Speed Centrifugal Pump

机译:粘度对低特定速度离心泵性能的影响

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摘要

Centrifugal pump delivery head and flow rate drop effectively during the pumping of viscous fluids. Several methods and correlations have been developed to predict reduction rate in centrifugal pump performance when handling viscous fluids, but their results are not in very good agreement with each other. In this study, a common industrial low specific speed pump, which is extensively used in different applications, is studied. The entire pump, including impeller, volute, pipes, front and rear sidewall gaps, and balance holes, is simulated in Computational Fluid Dynamics and 3D full Navier Stokes equations are solved. CFD results are compared with experimental data such as pump performance curves, static pressure in casing, and disk friction loss. Dimensionless angular velocity and leakage rate are investigated in sidewall gap and efficiency variation due to viscosity is studied. The results demonstrate that the behavior of the fluid in sidewall gap is strictly sensitive to viscosity. Increasing viscosity improves the volumetric efficiency by reducing internal leakage through wear rings and balance holes, causing, however, a significant fall in the disk and overall efficiency. Results lead to some recommendations for designing centrifugal pumps which may be used in transferring viscous fluids.
机译:离心泵输送头和流速在粘性流体泵送过程中有效地下降。已经开发了几种方法和相关性以在处理粘性流体时预测离心泵性能的降低速率,但它们的结果与彼此不太吻合。在本研究中,研究了一种共同的工业低特定泵,其广泛用于不同应用中的应用。在计算流体动力学中模拟了整个泵,包括叶轮,蜗壳,管道,前后侧壁间隙和平衡孔,并解决了3D全Navier Stokes方程。将CFD结果与泵性能曲线等实验数据进行比较,壳体静压和磁盘摩擦损失。在侧壁间隙中研究了无量纲角速度和泄漏率,并且研究了由于粘度引起的效率变化。结果表明,侧壁间隙中的流体的行为严格对粘度敏感。通过磨损环和平衡孔减少内部泄漏,增加粘度提高了容积效率,然而,导致磁盘和整体效率显着下降。结果导致设计可用于传递粘性流体的离心泵的一些建议。

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